Ammonium ferric citrate adding device for salt production

Through the combined design of components such as electric push rods and transparent scale tubes, flexible quantitative control of the ferric ammonium citrate addition device is achieved, solving the problem that existing devices cannot be adjusted, and improving the adaptability and efficiency of salt production.

CN223263750UActive Publication Date: 2025-08-26ZHONG QING HE CHUAN YAN HUA GONG YE YOU XIAN GONG SI
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Patent Information

Application Number
CN202422542491.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-08-26
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

The quantitative addition mode of the existing ferrous ammonium citrate addition device for salt production is relatively fixed and cannot be flexibly adjusted, resulting in insufficient adaptability and flexibility of salt production, affecting production quality and efficiency.

Method used

The combined design of electric push rod, transparent scale tube, single-hole block, motor, T-tube, liquid storage shell, L-shaped plate, connecting block and controller is adopted to achieve flexible adjustment of the quantitative addition mode. Through the cooperation of the controller and the motor, the position adjustment of the work rod and the quantitative release of the solution are achieved.

Benefits of technology

It improves the adaptability and flexibility of salt production, improves the use effect and efficiency of the ferrous ammonium citrate addition device, and ensures the consistency of the quality of different batches of salt.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ammonium ferric citrate adding device for salt production, and relates to the technical field of salt production, the ammonium ferric citrate adding device comprises an adding mechanism, the liquid outlet end of one groove of a liquid storage shell is bonded and connected with a transparent graduated tube, the front surface of the liquid storage shell is provided with a controller, and the controller is connected with the transparent graduated tube. Electric push rods are mounted at the bottom of the connecting block and the bottom of the inner wall of the other groove of the liquid storage shell, and a motor is mounted at the top of the single-hole block; under the cooperation of the electric push rod, the transparent graduated tube, the single-hole block, the motor, the T-shaped tube, the liquid storage shell, the L-shaped plate, the connecting block, the controller and the I-shaped rod, the quantitative adding mode of the adding device can be adjusted according to the condition of each batch of salt, so that the adaptability and the flexibility of salt production are improved to a certain extent; the use effect of the ammonium ferric citrate adding device for table salt production is improved, and meanwhile the use efficiency of the ammonium ferric citrate adding device for table salt production is also improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of salt production, in particular to an ammonium ferric citrate adding device for salt production. Background Art

[0002] The main component of table salt is sodium chloride, a colorless and transparent cubic crystal. It is mainly used for seasoning, food processing and maintaining the ecological balance of the human body. In the production process of table salt, in order to prevent the salt from getting damp and agglomerating and to enhance its nutritional value, ammonium ferric citrate is generally added during the production process of table salt. The addition of ammonium ferric citrate to table salt requires the use of an adding device.

[0003] In the existing technology, the existing ammonium ferric citrate adding device for salt production can automatically add the solution prepared with ammonium ferric citrate to the salt during actual use, freeing the workers' hands and reducing the workers' workload. However, the quantitative addition mode of most adding devices is relatively fixed, which means that the adding device cannot be flexibly adjusted according to the specific conditions of each batch of salt, thereby limiting the adaptability and flexibility of salt production to a certain extent, reducing the use effect of the ammonium ferric citrate adding device for salt production, and also reducing the use efficiency of the ammonium ferric citrate adding device for salt production.

[0004] However, therefore, it is necessary to propose a novel ammonium ferric citrate adding device for salt production. Utility Model Content

[0005] The purpose of the utility model is to solve the problem that the quantitative addition mode of the existing ammonium ferric citrate adding device for table salt production is relatively fixed, that is, the adding device cannot be flexibly adjusted according to the specific conditions of each batch of table salt, thereby limiting the adaptability and flexibility of table salt production to a certain extent, and further resulting in the quality of the produced table salt being unqualified, which not only reduces the use effect of the ammonium ferric citrate adding device for table salt production, but also reduces the use efficiency of the ammonium ferric citrate adding device for table salt production. The utility model proposes an ammonium ferric citrate adding device for table salt production.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an ammonium ferric citrate adding device for salt production, comprising an adding mechanism, wherein the adding mechanism comprises a liquid storage shell, the liquid outlet end at one of the grooves of the liquid storage shell is adhesively connected to a transparent scale tube, a controller is installed on the front surface of the liquid storage shell, a connecting block is fixed to the outer wall of the liquid storage shell, an electric push rod is installed at the bottom of the connecting block and the bottom of the inner wall of another groove of the liquid storage shell, an L-shaped plate is installed at one end of the telescopic end of one of the electric push rods, a single-hole block is installed at the top of the telescopic end of the other electric push rod, a motor is installed on the top of the single-hole block, a T-shaped tube is fixedly sleeved inside the single-hole block, and an I-shaped rod is provided inside the T-shaped tube.

[0007] Preferably, the electric push rod and the motor are electrically connected to the controller, and the upper side of the L-shaped plate is in contact with the bottom of the transparent graduated tube, so that the L-shaped plate can prevent the solution inside the transparent graduated tube from flowing out.

[0008] Preferably, the single-hole block is movably sleeved inside another groove of the liquid storage shell, the top end of the T-shaped tube movably penetrates the inner wall of one of the grooves of the liquid storage shell, and the bottom end of the T-shaped tube is movably sleeved inside one of the grooves of the liquid storage shell, which can provide a placement position for another electric push rod and the prepared ammonium ferric citrate solution under the action of the liquid storage shell.

[0009] Preferably, the inner diameter of the liquid outlet end at one of the grooves of the liquid storage shell is the same as the inner diameter of the transparent scale tube, the I-shaped rod is movably sleeved inside the transparent scale tube, and the inner part of the circular hole at the bottom end of the T-shaped tube is connected to the inner part of the circular hole at the bottom end of the I-shaped rod, so that the I-shaped rod can be driven to move its position under the action of the moving T-shaped tube.

[0010] Preferably, a mounting block is installed near the top of the outer wall of the liquid storage shell, and a rubber ring is provided at the bottom of the inner wall of another groove of the liquid storage shell. The T-shaped tube is movably sleeved inside the rubber ring. Under the action of the rubber ring, the solution inside one groove of the liquid storage shell can be prevented from entering the other groove of the liquid storage shell.

[0011] Preferably, two symmetrical limit blocks are installed at the bottom of the inner wall of another groove of the liquid storage shell, and the opposite sides of the two limit blocks are in contact. The rubber ring is located between the two limit blocks, so that the rubber ring can be prevented from moving under the action of the limit blocks.

[0012] Preferably, two symmetrical chutes are provided on the top of the liquid storage shell, and the interiors of the two chutes are connected to the interior of another groove of the liquid storage shell. Sliders are slidably connected to the interiors of the two chutes, and the opposite sides of the two slides are fixed to the surface of the single-hole block. Through the cooperation of the liquid storage shell, the chute and the slide, the stability of the single-hole block during movement can be improved.

[0013] Compared with the prior art, the advantages and positive effects of the present invention are:

[0014] 1. In the utility model, with the cooperation of the electric push rod, the transparent graduated tube, the single-hole block, the motor, the T-tube, the liquid storage shell, the L-shaped plate, the connecting block, the controller and the I-shaped rod, the quantitative addition mode of the adding device can be adjusted according to the situation of each batch of salt, thereby improving the adaptability and flexibility of salt production to a certain extent, and improving the use effect of the ammonium ferric citrate adding device for salt production, and also improving the use efficiency of the ammonium ferric citrate adding device for salt production. With the cooperation of another electric push rod, the liquid storage shell, the single-hole block, the controller and the motor, the I-shaped rod can be driven to rotate, and with the cooperation of another electric push rod, the liquid storage shell and the single-hole block, the motor can be driven to move.

[0015] 2. In the utility model, the entire adding device can be fixed on the salt production equipment by the action of the mounting block. The rubber ring can prevent the liquid in one groove of the liquid storage shell from entering the other groove of the liquid storage shell through the gap between the outer wall of the T-shaped tube and the inner wall of the through hole where the outer wall of the T-shaped tube contacts the outer wall of the T-shaped tube. The cooperation of the slide groove and the slider can improve the stability of the other electric push rod when driving the single-hole block to move. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the structure of an ammonium ferric citrate adding device for salt production proposed by the utility model from a front view;

[0017] Figure 2 This is a partially cutaway perspective view of a device for adding ammonium ferric citrate for salt production, as proposed by the present invention;

[0018] Figure 3 This is a three-dimensional diagram of an L-shaped plate of an ammonium ferric citrate adding device for salt production proposed in the utility model;

[0019] Figure 4 This utility model provides a schematic diagram of the cross-sectional structure of a T-shaped tube and an I-shaped rod of an ammonium ferric citrate adding device for salt production;

[0020] Figure 5This is a partial perspective view of an ammonium ferric citrate adding device for salt production proposed by the utility model;

[0021] Figure 6 The utility model provides a partially cutaway stereoscopic view from an upward angle of an ammonium ferric citrate adding device for salt production.

[0022] Legend: 1. Adding mechanism; 101. Liquid storage shell; 102. Transparent scale tube; 103. Controller; 104. Connecting block; 105. Electric push rod; 106. L-shaped plate; 107. Single-hole block; 108. Motor; 109. T-shaped tube; 110. I-shaped rod; 2. Mounting block; 3. Limit block; 4. Rubber ring; 5. Slide groove; 6. Slider. DETAILED DESCRIPTION

[0023] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0024] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0025] See also Figures 1-6 The utility model provides a technical solution: an ammonium ferric citrate adding device for salt production, comprising an adding mechanism 1, the adding mechanism 1 comprising a liquid storage shell 101, a transparent scale tube 102 being adhesively connected to the liquid outlet end of one of the grooves of the liquid storage shell 101, a controller 103 being installed on the front surface of the liquid storage shell 101, a connecting block 104 being fixed to the outer wall of the liquid storage shell 101, an electric push rod 105 being installed on the bottom of the connecting block 104 and the bottom of the inner wall of another groove of the liquid storage shell 101, one end of the telescopic end of one of the electric push rods 105 being installed with an L-shaped plate 106, a single-hole block 107 being installed on the top of the telescopic end of the other electric push rod 105, a motor 108 being installed on the top of the single-hole block 107, a T-shaped tube 109 being fixedly sleeved on the inside of the single-hole block 107, and an I-shaped rod 110 being arranged on the inside of the T-shaped tube 109.

[0026] like Figure 1-Figure 3 and Figure 6 As shown, the electric push rod 105 and the motor 108 are both electrically connected to the controller 103, and the upper side of the L-shaped plate 106 is in contact with the bottom of the transparent scale tube 102, so that the solution inside the transparent scale tube 102 can be prevented from flowing out under the action of the L-shaped plate 106.

[0027] like Figure 1 、 Figure 2 、 Figure 4 and Figure 6 As shown, the single-hole block 107 is movably sleeved inside another groove of the liquid storage shell 101, the top end of the T-shaped tube 109 movably penetrates the inner wall of one of the grooves of the liquid storage shell 101, and the bottom end of the T-shaped tube 109 is movably sleeved inside one of the grooves of the liquid storage shell 101, which can provide a placement position for another electric push rod 105 and the prepared ammonium ferric citrate solution under the action of the liquid storage shell 101.

[0028] like Figure 1 、 Figure 2 、 Figure 4 and Figure 6 As shown, the inner diameter of the liquid outlet end at one of the grooves of the liquid storage shell 101 is the same as the inner diameter of the transparent scale tube 102, the I-shaped rod 110 is movably sleeved inside the transparent scale tube 102, and the inner part of the bottom circular hole of the T-shaped tube 109 is connected to the inner part of the bottom circular hole of the I-shaped rod 110, so that the I-shaped rod 110 can be driven to move its position under the action of the moving T-shaped tube 109.

[0029] like Figure 1 、 Figure 2 and Figure 4-Figure 6 As shown, a mounting block 2 is installed near the top of the outer wall of the liquid storage shell 101, and a rubber ring 4 is provided at the bottom of the inner wall of another groove of the liquid storage shell 101. The T-shaped tube 109 is movably sleeved inside the rubber ring 4. Under the action of the rubber ring 4, the solution inside one groove of the liquid storage shell 101 can be prevented from entering the other groove of the liquid storage shell 101.

[0030] like Figure 1 、 Figure 2 and Figure 5 As shown, two symmetrical limit blocks 3 are installed at the bottom of the inner wall of another groove of the liquid storage shell 101, and the opposite sides of the two limit blocks 3 are in contact with each other. The rubber ring 4 is located between the two limit blocks 3, which can prevent the rubber ring 4 from moving under the action of the limit blocks 3.

[0031] like Figure 1 、 Figure 2 and Figure 6 As shown, two symmetrical chutes 5 are provided on the top of the liquid storage shell 101, and the interiors of the two chutes 5 are connected to the interior of another groove of the liquid storage shell 101. The interiors of the two chutes 5 are slidably connected with sliders 6, and the opposite sides of the two sliders 6 are fixed to the surface of the single-hole block 107. Through the cooperation of the liquid storage shell 101, the chute 5 and the slider 6, the stability of the single-hole block 107 during movement can be improved.

[0032] The method of use and working principle of this device: When the addition device is needed for salt production, first use the installation block 2 and the prepared expansion bolts to install the entire addition device on the salt production equipment, then inject the prepared ammonium ferric citrate solution into one of the grooves of the liquid storage shell 101, and then part of the solution injected into the liquid storage shell 101 will enter the transparent scale tube 102. When an appropriate amount of solution is injected into one of the grooves of the liquid storage shell 101, first connect the controller 103 to the external power supply through the power cord, then turn on the controller 103, and set the usage program and the rotation time of the output end of the motor 108. , then use the controller 103 to start another electric push rod 105. At this time, the other electric push rod 105 started will drive the motor 108, T-shaped tube 109 and I-shaped rod 110 to move simultaneously with the cooperation of the single hole block 107, two slide grooves 5, two sliders 6 and liquid storage shell 101 connected thereto. When the bottom of the I-shaped rod 110 and one of the scale points on the transparent scale tube 102 (selected according to the actual batch situation) are on the same horizontal line, the controller 103 is used to pause the other electric push rod 105. At this time, the controller 103 is used to start the motor 108 again. The started motor 108 will directly drive the I-shaped rod 110 to rotate When the output end of the motor 108 rotates to a certain position, the circular hole on the I-shaped rod 110 and the circular hole on the T-shaped tube 109 are just staggered. At this time, the controller 103 will pause the motor 108, and then the controller 103 will start one of the electric push rods 105. At this time, one of the electric push rods 105 started will drive the L-shaped plate 106 connected thereto to move. When the upper side of the L-shaped plate 106 is separated from the bottom of the transparent graduated tube 102, the quantitative solution inside the transparent graduated tube 102 will be directly released and sprinkled on the salt to which ammonium ferric citrate needs to be added. When the solution inside the transparent graduated tube 102 is released, the controller 103 will start again. The L-shaped plate 106 is reset to its original position by using one of the electric push rods 105. When the L-shaped plate 106 is reset to its original position, the controller 103 will use the cooperation of the motor 108 to rotate and reset the I-shaped rod 110. When the I-shaped rod 110 is rotated and reset to its initial position, the solution inside one of the grooves of the liquid storage shell 101 will continue to be injected into the transparent graduated tube 102. This process can be repeated to achieve quantitative addition. When different batches of salt need to be added with ammonium ferric citrate, the position of the I-shaped rod 110 can be adjusted according to the actual situation, thereby improving the adaptability and flexibility of salt production to a certain extent.

[0033] Among them, the transparent scale tube 102, the controller 103 (PLC controller), the electric push rod 105 and the motor 108 are all existing technologies, and their models can be selected according to actual conditions, and no further explanation is given here.

[0034] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. An ammonium ferric citrate adding device for salt production, comprising an adding mechanism (1), characterized in that: The adding mechanism (1) comprises a liquid storage shell (101), wherein a transparent graduated tube (102) is bonded to a liquid outlet end at one of the grooves of the liquid storage shell (101), a controller (103) is mounted on the front surface of the liquid storage shell (101), a connecting block (104) is fixed to the outer wall of the liquid storage shell (101), and electric push rods (105) are mounted on the bottom of the connecting block (104) and the bottom of the inner wall of another groove of the liquid storage shell (101), wherein an L-shaped plate (106) is mounted on one end of the telescopic end of one of the electric push rods (105), a single-hole block (107) is mounted on the top end of the telescopic end of the other electric push rod (105), a motor (108) is mounted on the top of the single-hole block (107), a T-shaped tube (109) is fixedly sleeved inside the single-hole block (107), and an I-shaped rod (110) is arranged inside the T-shaped tube (109).

2. The ammonium ferric citrate adding device for salt production according to claim 1, characterized in that: The electric push rod (105) and the motor (108) are both electrically connected to the controller (103), and the upper side of the L-shaped plate (106) is in contact with the bottom of the transparent graduated tube (102).

3. The ammonium ferric citrate adding device for salt production according to claim 1, characterized in that: The single-hole block (107) is movably sleeved inside another groove of the liquid storage shell (101), the top end of the T-shaped tube (109) movably penetrates the inner wall of one of the grooves of the liquid storage shell (101), and the bottom end of the T-shaped tube (109) is movably sleeved inside one of the grooves of the liquid storage shell (101).

4. The ammonium ferric citrate adding device for salt production according to claim 1, characterized in that: The internal diameter of the liquid outlet end at one of the grooves of the liquid storage shell (101) is the same as the internal diameter of the transparent graduated tube (102); the I-shaped rod (110) is movably sleeved inside the transparent graduated tube (102); and the inside of the bottom circular hole of the T-shaped tube (109) is connected to the inside of the bottom circular hole of the I-shaped rod (110).

5. The ammonium ferric citrate adding device for salt production according to claim 1, characterized in that: A mounting block (2) is installed near the top of the outer wall of the liquid storage shell (101), a rubber ring (4) is provided at the bottom of the inner wall of another groove of the liquid storage shell (101), and the T-shaped tube (109) is movably sleeved inside the rubber ring (4).

6. The ammonium ferric citrate adding device for salt production according to claim 5, characterized in that: Two symmetrical limiting blocks (3) are installed at the bottom of the inner wall of another groove of the liquid storage shell (101), and opposite sides of the two limiting blocks (3) are in contact with each other. The rubber ring (4) is located between the insides of the two limiting blocks (3).

7. The ammonium ferric citrate adding device for salt production according to claim 1, characterized in that: Two symmetrical chute grooves (5) are provided on the top of the liquid storage shell (101), and the interiors of the two chute grooves (5) are connected to the interior of another groove of the liquid storage shell (101). Slide blocks (6) are slidably connected to the interiors of the two chute grooves (5), and opposite sides of the two slide blocks (6) are fixed to the surface of the single-hole block (107).